Journal
PHYSICAL REVIEW LETTERS
Volume 113, Issue 14, Pages -Publisher
AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.113.143602
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Funding
- FIRB Project - MIUR [D11J11000450001]
- EMRP Project [EXL02-SIQUTE]
- A.Di.NTech. Project - University of Torino and Compagnia di San Paolo [D15E13000130003]
- NATO SPS Project [984397]
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We experimentally demonstrate quantum enhanced resolution in confocal fluorescence microscopy exploiting the nonclassical photon statistics of single nitrogen-vacancy color centers in diamond. By developing a general model of superresolution based on the direct sampling of the kth-order autocorrelation function of the photoluminescence signal, we show the possibility to resolve, in principle, arbitrarily close emitting centers.
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